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一种可充电的钙/氯电池。

A rechargeable Ca/Cl battery.

作者信息

Geng Shitao, Zhao Xiaoju, Xu Qiuchen, Yuan Bin, Wang Yan, Liao Meng, Ye Lei, Wang Shuo, Ouyang Zhaofeng, Wu Liang, Wang Yongyang, Ma Chenyan, Zhao Xiaojuan, Sun Hao

机构信息

Frontiers Science Center for Transformative Molecules, School of Chemistry and Chemical Engineering, and Zhangjiang Institute for Advanced Study, Shanghai Jiao Tong University, 200240, Shanghai, China.

Department of Mechanical Engineering, The Pennsylvania State University, University Park, State College, PA, 16802, USA.

出版信息

Nat Commun. 2024 Jan 31;15(1):944. doi: 10.1038/s41467-024-45347-3.

Abstract

Rechargeable calcium (Ca) metal batteries are promising candidates for sustainable energy storage due to the abundance of Ca in Earth's crust and the advantageous theoretical capacity and voltage of these batteries. However, the development of practical Ca metal batteries has been severely hampered by the current cathode chemistries, which limit the available energy and power densities, as well as their insufficient capacity retention and low-temperature capability. Here, we describe the rechargeable Ca/Cl battery based on a reversible cathode redox reaction between CaCl and Cl, which is enabled by the use of lithium difluoro(oxalate)borate as a key electrolyte mediator to facilitate the dissociation and distribution of Cl-based species and Ca. Our rechargeable Ca/Cl battery can deliver discharge voltages of 3 V and exhibits remarkable specific capacity (1000 mAh g) and rate capability (500 mA g). In addition, the excellent capacity retention (96.5% after 30 days) and low-temperature capability (down to 0 °C) allow us to overcome the long-standing bottleneck of rechargeable Ca metal batteries.

摘要

由于地壳中钙含量丰富,且这类电池具有有利的理论容量和电压,可充电钙金属电池是可持续储能的有前景的候选者。然而,目前的阴极化学性质严重阻碍了实用钙金属电池的发展,这限制了可用能量和功率密度,以及它们不足的容量保持率和低温性能。在此,我们描述了一种基于氯化钙和氯之间可逆阴极氧化还原反应的可充电钙/氯电池,这是通过使用二氟(草酸)硼酸锂作为关键电解质介质来促进基于氯的物种和钙的离解和分布而实现的。我们的可充电钙/氯电池能够提供3V的放电电压,并展现出显著的比容量(1000 mAh g)和倍率性能(500 mA g)。此外,优异的容量保持率(30天后为96.5%)和低温性能(低至0°C)使我们能够克服可充电钙金属电池长期存在的瓶颈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44b2/10831116/f33d574eeabb/41467_2024_45347_Fig1_HTML.jpg

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